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Influence of deformation on metal structure in the forward microextrusion process

机译:变形对正向微挤压过程中金属结构的影响

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Investigation results presented in the work relates to the impact of tool roughness on the material plastic flow during forward microextruding of metal. Investigation process consists of the experimental and numerical parts. In the experimental one, forward microextrusion of annealed material using the toolkit author’s copyright project were performed. The tests were conducted to compare deformation of the material extruded in containers with different roughness. As a results, obtained images of deformed material structures are presented and compared. Numerical part relates to simulations of analogous microextrusion processes conducted using DEFORM software. Tool roughness were modeled in the form of rigid triangular waves, whose geometric parameters are based on the roughness profiles obtained for the experimental tools. Depth and length of the triangular elements were determined using the motives method.? Distribution fields of the effective stress, strain and the flow velocities are presented and compared. Based on obtained data, concept of determining of the parameter which can help to define the appearance of structural size effect resulting from the influence of container roughness is also presented.
机译:工作中提出的调查结果涉及在金属正向微挤压过程中工具粗糙度对材料塑性流动的影响。调查过程包括实验部分和数字部分。在实验性实验中,使用工具包作者的版权项目对退火材料进行了正向微挤压。进行测试以比较挤压在具有不同粗糙度的容器中的材料的变形。结果,呈现并比较了获得的变形材料结构的图像。数值部分涉及使用DEFORM软件进行的类似微挤压过程的模拟。刀具粗糙度以刚性三角波的形式建模,其几何参数基于为实验刀具获得的粗糙度轮廓。使用动机方法确定三角形元素的深度和长度。给出并比较了有效应力,应变和流速的分布场。基于获得的数据,提出了确定参数的概念,该参数可以帮助定义由容器粗糙度的影响引起的结构尺寸效应的出现。

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